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devcons.c 24 KB

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  1. /*
  2. * This file is part of the UCB release of Plan 9. It is subject to the license
  3. * terms in the LICENSE file found in the top-level directory of this
  4. * distribution and at http://akaros.cs.berkeley.edu/files/Plan9License. No
  5. * part of the UCB release of Plan 9, including this file, may be copied,
  6. * modified, propagated, or distributed except according to the terms contained
  7. * in the LICENSE file.
  8. */
  9. #include "u.h"
  10. #include "../port/lib.h"
  11. #include "mem.h"
  12. #include "dat.h"
  13. #include "fns.h"
  14. #include "../port/error.h"
  15. #include <authsrv.h>
  16. enum
  17. {
  18. Nconsdevs = 3, /* max number of consoles */
  19. /* Consdev flags */
  20. Ciprint = 2, /* call this fn from iprint */
  21. Cntorn = 4, /* change \n to \r\n */
  22. };
  23. typedef struct Consdev Consdev;
  24. struct Consdev
  25. {
  26. Chan* c; /* external file */
  27. Queue* q; /* i/o queue, if any */
  28. void (*fn)(char*, int); /* i/o function when no queue */
  29. int flags;
  30. };
  31. extern int printallsyscalls;
  32. void (*consdebug)(void) = nil;
  33. void (*consputs)(char*, int) = nil;
  34. void (*consuartputs)(char*, int) = nil;
  35. static void kmesgputs(char *, int);
  36. static void kprintputs(char*, int);
  37. static Lock consdevslock;
  38. static int nconsdevs = 1;
  39. static Consdev consdevs[Nconsdevs] = /* keep this order */
  40. {
  41. {nil, nil, kmesgputs, 0}, /* kmesg */
  42. {nil, nil, kprintputs, Ciprint}, /* kprint */
  43. };
  44. static int nkbdqs;
  45. static int nkbdprocs;
  46. static Queue* kbdqs[Nconsdevs];
  47. static int kbdprocs[Nconsdevs];
  48. static Queue* kbdq; /* unprocessed console input */
  49. static Queue* lineq; /* processed console input */
  50. static Queue* kprintoq; /* console output, for /dev/kprint */
  51. static uint32_t kprintinuse; /* test and set whether /dev/kprint is open */
  52. int panicking;
  53. static struct
  54. {
  55. QLock QLock;
  56. int raw; /* true if we shouldn't process input */
  57. Ref ctl; /* number of opens to the control file */
  58. int x; /* index into line */
  59. char line[1024]; /* current input line */
  60. int count;
  61. int ctlpoff;
  62. /* a place to save up characters at interrupt time before dumping them in the queue */
  63. Lock lockputc;
  64. char istage[1024];
  65. char *iw;
  66. char *ir;
  67. char *ie;
  68. } kbd = {
  69. .iw = kbd.istage,
  70. .ir = kbd.istage,
  71. .ie = kbd.istage + sizeof(kbd.istage),
  72. };
  73. char *sysname;
  74. int64_t fasthz;
  75. static void seedrand(void);
  76. static int readtime(uint32_t, char*, int);
  77. static int readbintime(char*, int);
  78. static int writetime(char*, int);
  79. static int writebintime(char*, int);
  80. enum
  81. {
  82. CMhalt,
  83. CMreboot,
  84. CMpanic,
  85. };
  86. Cmdtab rebootmsg[] =
  87. {
  88. CMhalt, "halt", 1,
  89. CMreboot, "reboot", 0,
  90. CMpanic, "panic", 0,
  91. };
  92. /* To keep the rest of the kernel unware of new consdevs for now */
  93. static void
  94. kprintputs(char *s, int n)
  95. {
  96. if(consputs != nil)
  97. consputs(s, n);
  98. }
  99. int
  100. addconsdev(Queue *q, void (*fn)(char*,int), int i, int flags)
  101. {
  102. Consdev *c;
  103. ilock(&consdevslock);
  104. if(i < 0)
  105. i = nconsdevs;
  106. else
  107. flags |= consdevs[i].flags;
  108. if(nconsdevs == Nconsdevs)
  109. panic("Nconsdevs too small");
  110. c = &consdevs[i];
  111. c->flags = flags;
  112. c->q = q;
  113. c->fn = fn;
  114. if(i == nconsdevs)
  115. nconsdevs++;
  116. iunlock(&consdevslock);
  117. return i;
  118. }
  119. void
  120. delconsdevs(void)
  121. {
  122. nconsdevs = 2; /* throw away serial consoles and kprint */
  123. consdevs[1].q = nil;
  124. }
  125. static void
  126. conskbdqproc(void *a)
  127. {
  128. char buf[64];
  129. Queue *q;
  130. int nr;
  131. q = a;
  132. while((nr = qread(q, buf, sizeof(buf))) > 0)
  133. qwrite(kbdq, buf, nr);
  134. pexit("hangup", 1);
  135. }
  136. static void
  137. kickkbdq(void)
  138. {
  139. Proc *up = externup();
  140. int i;
  141. if(up != nil && nkbdqs > 1 && nkbdprocs != nkbdqs){
  142. lock(&consdevslock);
  143. if(nkbdprocs == nkbdqs){
  144. unlock(&consdevslock);
  145. return;
  146. }
  147. for(i = 0; i < nkbdqs; i++)
  148. if(kbdprocs[i] == 0){
  149. kbdprocs[i] = 1;
  150. kproc("conskbdq", conskbdqproc, kbdqs[i]);
  151. }
  152. unlock(&consdevslock);
  153. }
  154. }
  155. int
  156. addkbdq(Queue *q, int i)
  157. {
  158. int n;
  159. ilock(&consdevslock);
  160. if(i < 0)
  161. i = nkbdqs++;
  162. if(nkbdqs == Nconsdevs)
  163. panic("Nconsdevs too small");
  164. kbdqs[i] = q;
  165. n = nkbdqs;
  166. iunlock(&consdevslock);
  167. switch(n){
  168. case 1:
  169. /* if there's just one, pull directly from it. */
  170. kbdq = q;
  171. break;
  172. case 2:
  173. /* later we'll merge bytes from all kbdqs into a single kbdq */
  174. kbdq = qopen(4*1024, 0, 0, 0);
  175. if(kbdq == nil)
  176. panic("no kbdq");
  177. /* fall */
  178. default:
  179. kickkbdq();
  180. }
  181. return i;
  182. }
  183. void
  184. printinit(void)
  185. {
  186. lineq = qopen(2*1024, 0, nil, nil);
  187. if(lineq == nil)
  188. panic("printinit");
  189. qnoblock(lineq, 1);
  190. }
  191. int
  192. consactive(void)
  193. {
  194. int i;
  195. Queue *q;
  196. for(i = 0; i < nconsdevs; i++)
  197. if((q = consdevs[i].q) != nil && qlen(q) > 0)
  198. return 1;
  199. return 0;
  200. }
  201. void
  202. prflush(void)
  203. {
  204. uint32_t now;
  205. now = sys->ticks;
  206. while(consactive())
  207. if(sys->ticks - now >= HZ)
  208. break;
  209. }
  210. /*
  211. * Log console output so it can be retrieved via /dev/kmesg.
  212. * This is good for catching boot-time messages after the fact.
  213. */
  214. struct {
  215. Lock lk;
  216. char buf[1048576];
  217. uint n;
  218. } kmesg;
  219. static void
  220. kmesgputs(char *str, int n)
  221. {
  222. uint nn, d;
  223. ilock(&kmesg.lk);
  224. /* take the tail of huge writes */
  225. if(n > sizeof kmesg.buf){
  226. d = n - sizeof kmesg.buf;
  227. str += d;
  228. n -= d;
  229. }
  230. /* slide the buffer down to make room */
  231. nn = kmesg.n;
  232. if(nn + n >= sizeof kmesg.buf){
  233. d = nn + n - sizeof kmesg.buf;
  234. if(d)
  235. memmove(kmesg.buf, kmesg.buf+d, sizeof kmesg.buf-d);
  236. nn -= d;
  237. }
  238. /* copy the data in */
  239. memmove(kmesg.buf+nn, str, n);
  240. nn += n;
  241. kmesg.n = nn;
  242. iunlock(&kmesg.lk);
  243. }
  244. /*
  245. static void
  246. consdevputs(Consdev *c, char *s, int n, int usewrite)
  247. {
  248. Chan *cc;
  249. Queue *q;
  250. if((cc = c->c) != nil && usewrite)
  251. cc->dev->write(cc, s, n, 0);
  252. else if((q = c->q) != nil && !qisclosed(q))
  253. if(usewrite)
  254. qwrite(q, s, n);
  255. else
  256. qiwrite(q, s, n);
  257. else if(c->fn != nil)
  258. c->fn(s, n);
  259. }
  260. */
  261. /*
  262. * Print a string on the console. Convert \n to \r\n for serial
  263. * line consoles. Locking of the queues is left up to the screen
  264. * or uart code. Multi-line messages to serial consoles may get
  265. * interspersed with other messages.
  266. */
  267. static void
  268. putstrn0(char *str, int n, int usewrite)
  269. {
  270. kmesgputs(str, n);
  271. if(consputs != nil)
  272. consputs(str, n);
  273. if(consuartputs != nil)
  274. consuartputs(str, n);
  275. }
  276. /*
  277. static void
  278. putstrn0(char *str, int n, int usewrite)
  279. {
  280. Consdev *c;
  281. char *s, *t;
  282. int i, len, m;
  283. if(!islo())
  284. usewrite = 0;
  285. for(i = 0; i < nconsdevs; i++){
  286. c = &consdevs[i];
  287. len = n;
  288. s = str;
  289. while(len > 0){
  290. t = nil;
  291. if((c->flags&Cntorn) && !kbd.raw)
  292. t = memchr(s, '\n', len);
  293. if(t != nil && !kbd.raw){
  294. m = t-s;
  295. consdevputs(c, s, m, usewrite);
  296. consdevputs(c, "\r\n", 2, usewrite);
  297. len -= m+1;
  298. s = t+1;
  299. }else{
  300. consdevputs(c, s, len, usewrite);
  301. break;
  302. }
  303. }
  304. }
  305. }
  306. */
  307. void
  308. putstrn(char *str, int n)
  309. {
  310. putstrn0(str, n, 0);
  311. }
  312. int
  313. print(char *fmt, ...)
  314. {
  315. int n;
  316. va_list arg;
  317. char buf[PRINTSIZE];
  318. va_start(arg, fmt);
  319. n = vseprint(buf, buf+sizeof(buf), fmt, arg) - buf;
  320. va_end(arg);
  321. putstrn(buf, n);
  322. return n;
  323. }
  324. int
  325. kmprint(char *fmt, ...)
  326. {
  327. int n;
  328. va_list arg;
  329. char buf[PRINTSIZE];
  330. va_start(arg, fmt);
  331. n = vseprint(buf, buf+sizeof(buf), fmt, arg) - buf;
  332. va_end(arg);
  333. kmesgputs(buf, n);
  334. return n;
  335. }
  336. /*
  337. * Want to interlock iprints to avoid interlaced output on
  338. * multiprocessor, but don't want to deadlock if one processor
  339. * dies during print and another has something important to say.
  340. * Make a good faith effort.
  341. */
  342. static Lock iprintlock;
  343. static int
  344. iprintcanlock(Lock *l)
  345. {
  346. int i;
  347. for(i=0; i<1000; i++){
  348. if(canlock(l))
  349. return 1;
  350. if(l->m == machp())
  351. return 0;
  352. microdelay(100);
  353. }
  354. return 0;
  355. }
  356. int
  357. iprint(char *fmt, ...)
  358. {
  359. Mpl pl;
  360. int i, n, locked;
  361. va_list arg;
  362. char buf[PRINTSIZE];
  363. pl = splhi();
  364. va_start(arg, fmt);
  365. n = vseprint(buf, buf+sizeof(buf), fmt, arg) - buf;
  366. va_end(arg);
  367. locked = iprintcanlock(&iprintlock);
  368. for(i = 0; i < nconsdevs; i++)
  369. if((consdevs[i].flags&Ciprint) != 0){
  370. if(consdevs[i].q != nil)
  371. qiwrite(consdevs[i].q, buf, n);
  372. else
  373. consdevs[i].fn(buf, n);
  374. }
  375. if(locked)
  376. unlock(&iprintlock);
  377. splx(pl);
  378. return n;
  379. }
  380. #pragma profile 0
  381. void
  382. panic(char *fmt, ...)
  383. {
  384. int n;
  385. Mpl pl;
  386. va_list arg;
  387. char buf[PRINTSIZE];
  388. consdevs[1].q = nil; /* don't try to write to /dev/kprint */
  389. if(panicking)
  390. for(;;);
  391. panicking = 1;
  392. pl = splhi();
  393. seprint(buf, buf+sizeof buf, "panic: cpu%d: ", machp()->machno);
  394. va_start(arg, fmt);
  395. n = vseprint(buf+strlen(buf), buf+sizeof(buf), fmt, arg) - buf;
  396. va_end(arg);
  397. iprint("%s\n", buf);
  398. if(consdebug)
  399. (*consdebug)();
  400. splx(pl);
  401. //prflush();
  402. buf[n] = '\n';
  403. putstrn(buf, n+1);
  404. //dumpstack();
  405. delay(1000); /* give time to consoles */
  406. die("wait forever");
  407. exit(1);
  408. }
  409. #pragma profile 1
  410. /* libmp at least contains a few calls to sysfatal; simulate with panic */
  411. void
  412. sysfatal(char *fmt, ...)
  413. {
  414. char err[256];
  415. va_list arg;
  416. va_start(arg, fmt);
  417. vseprint(err, err + sizeof err, fmt, arg);
  418. va_end(arg);
  419. panic("sysfatal: %s", err);
  420. }
  421. void
  422. _assert(char *fmt)
  423. {
  424. panic("assert failed at %#p: %s", getcallerpc(&fmt), fmt);
  425. }
  426. int
  427. pprint(char *fmt, ...)
  428. {
  429. Proc *up = externup();
  430. int n;
  431. Chan *c;
  432. va_list arg;
  433. char buf[2*PRINTSIZE];
  434. if(up == nil || up->fgrp == nil)
  435. return 0;
  436. c = up->fgrp->fd[2];
  437. if(c==0 || (c->mode!=OWRITE && c->mode!=ORDWR))
  438. return 0;
  439. n = snprint(buf, sizeof buf, "%s %d: ", up->text, up->pid);
  440. va_start(arg, fmt);
  441. n = vseprint(buf+n, buf+sizeof(buf), fmt, arg) - buf;
  442. va_end(arg);
  443. if(waserror())
  444. return 0;
  445. c->dev->write(c, buf, n, c->offset);
  446. poperror();
  447. lock(&c->r.l);
  448. c->offset += n;
  449. unlock(&c->r.l);
  450. return n;
  451. }
  452. /*
  453. * Put character, possibly a rune, into read queue at interrupt time.
  454. * Called at interrupt time to process a character.
  455. */
  456. int
  457. kbdputc(Queue *q, int ch)
  458. {
  459. int i, n;
  460. char buf[3];
  461. Rune r;
  462. char *next;
  463. if(kbd.ir == nil)
  464. return 0; /* in case we're not inited yet */
  465. ilock(&kbd.lockputc); /* just a mutex */
  466. r = ch;
  467. n = runetochar(buf, &r);
  468. for(i = 0; i < n; i++){
  469. next = kbd.iw+1;
  470. if(next >= kbd.ie)
  471. next = kbd.istage;
  472. if(next == kbd.ir)
  473. break;
  474. *kbd.iw = buf[i];
  475. kbd.iw = next;
  476. }
  477. iunlock(&kbd.lockputc);
  478. return 0;
  479. }
  480. enum{
  481. Qdir,
  482. Qbintime,
  483. Qcons,
  484. Qconsctl,
  485. Qcputime,
  486. Qdrivers,
  487. Qkmesg,
  488. Qkprint,
  489. Qhostdomain,
  490. Qhostowner,
  491. Qnull,
  492. Qosversion,
  493. Qpgrpid,
  494. Qpid,
  495. Qppid,
  496. Qrandom,
  497. Qurandom,
  498. Qreboot,
  499. Qswap,
  500. Qsysname,
  501. Qsysstat,
  502. Qtime,
  503. Quser,
  504. Qzero,
  505. Qsyscall,
  506. Qdebug,
  507. };
  508. enum
  509. {
  510. VLNUMSIZE= 22,
  511. };
  512. static Dirtab consdir[]={
  513. ".", {Qdir, 0, QTDIR}, 0, DMDIR|0555,
  514. "bintime", {Qbintime}, 24, 0664,
  515. "cons", {Qcons}, 0, 0660,
  516. "consctl", {Qconsctl}, 0, 0220,
  517. "cputime", {Qcputime}, 6*NUMSIZE, 0444,
  518. "drivers", {Qdrivers}, 0, 0444,
  519. "hostdomain", {Qhostdomain}, DOMLEN, 0664,
  520. "hostowner", {Qhostowner}, 0, 0664,
  521. "kmesg", {Qkmesg}, 0, 0440,
  522. "kprint", {Qkprint, 0, QTEXCL}, 0, DMEXCL|0440,
  523. "null", {Qnull}, 0, 0666,
  524. "osversion", {Qosversion}, 0, 0444,
  525. "pgrpid", {Qpgrpid}, NUMSIZE, 0444,
  526. "pid", {Qpid}, NUMSIZE, 0444,
  527. "ppid", {Qppid}, NUMSIZE, 0444,
  528. "random", {Qrandom}, 0, 0444,
  529. "urandom", {Qurandom}, 0, 0444,
  530. "reboot", {Qreboot}, 0, 0664,
  531. "swap", {Qswap}, 0, 0664,
  532. "sysname", {Qsysname}, 0, 0664,
  533. "sysstat", {Qsysstat}, 0, 0666,
  534. "time", {Qtime}, NUMSIZE+3*VLNUMSIZE, 0664,
  535. "user", {Quser}, 0, 0666,
  536. "zero", {Qzero}, 0, 0444,
  537. "syscall", {Qsyscall}, 0, 0666,
  538. "debug", {Qdebug}, 0, 0666,
  539. };
  540. int
  541. readnum(uint32_t off, char *buf, uint32_t n, uint32_t val, int size)
  542. {
  543. char tmp[64];
  544. snprint(tmp, sizeof(tmp), "%*lu", size-1, val);
  545. tmp[size-1] = ' ';
  546. if(off >= size)
  547. return 0;
  548. if(off+n > size)
  549. n = size-off;
  550. memmove(buf, tmp+off, n);
  551. return n;
  552. }
  553. int32_t
  554. readmem(int32_t offset, void *buf, int32_t n, void *v, int32_t size)
  555. {
  556. if(offset >= size)
  557. return 0;
  558. if(offset+n > size)
  559. n = size-offset;
  560. memmove(buf, v+offset, n);
  561. return n;
  562. }
  563. int32_t
  564. readstr(int32_t offset, char *buf, int32_t n, char *str)
  565. {
  566. int32_t size;
  567. size = strlen(str);
  568. if(offset >= size)
  569. return 0;
  570. if(offset+n > size)
  571. n = size-offset;
  572. memmove(buf, str+offset, n);
  573. return n;
  574. }
  575. static void
  576. consinit(void)
  577. {
  578. todinit();
  579. }
  580. static Chan*
  581. consattach(char *spec)
  582. {
  583. return devattach('c', spec);
  584. }
  585. static Walkqid*
  586. conswalk(Chan *c, Chan *nc, char **name, int nname)
  587. {
  588. return devwalk(c, nc, name,nname, consdir, nelem(consdir), devgen);
  589. }
  590. static int32_t
  591. consstat(Chan *c, uint8_t *dp, int32_t n)
  592. {
  593. return devstat(c, dp, n, consdir, nelem(consdir), devgen);
  594. }
  595. static Chan*
  596. consopen(Chan *c, int omode)
  597. {
  598. c->aux = nil;
  599. c = devopen(c, omode, consdir, nelem(consdir), devgen);
  600. switch((uint32_t)c->qid.path){
  601. case Qconsctl:
  602. incref(&kbd.ctl);
  603. break;
  604. case Qkprint:
  605. if(TAS(&kprintinuse) != 0){
  606. c->flag &= ~COPEN;
  607. error(Einuse);
  608. }
  609. if(kprintoq == nil){
  610. kprintoq = qopen(8*1024, Qcoalesce, 0, 0);
  611. if(kprintoq == nil){
  612. c->flag &= ~COPEN;
  613. error(Enomem);
  614. }
  615. qnoblock(kprintoq, 1);
  616. consdevs[1].q = kprintoq;
  617. }else
  618. qreopen(kprintoq);
  619. c->iounit = qiomaxatomic;
  620. break;
  621. }
  622. return c;
  623. }
  624. static void
  625. consclose(Chan *c)
  626. {
  627. switch((uint32_t)c->qid.path){
  628. /* last close of control file turns off raw */
  629. case Qconsctl:
  630. if(c->flag&COPEN){
  631. if(decref(&kbd.ctl) == 0)
  632. kbd.raw = 0;
  633. }
  634. break;
  635. /* close of kprint allows other opens */
  636. case Qkprint:
  637. if(c->flag & COPEN){
  638. kprintinuse = 0;
  639. qhangup(kprintoq, nil);
  640. }
  641. break;
  642. }
  643. }
  644. static int32_t
  645. consread(Chan *c, void *buf, int32_t n, int64_t off)
  646. {
  647. Proc *up = externup();
  648. uint32_t l;
  649. Mach *mp;
  650. char *b, *bp, ch, *s, *e;
  651. char tmp[512]; /* Qswap is 381 bytes at clu */
  652. int i, k, id, send;
  653. int32_t offset;
  654. if(n <= 0)
  655. return n;
  656. offset = off;
  657. switch((uint32_t)c->qid.path){
  658. case Qdir:
  659. return devdirread(c, buf, n, consdir, nelem(consdir), devgen);
  660. case Qcons:
  661. qlock(&kbd.QLock);
  662. if(waserror()) {
  663. qunlock(&kbd.QLock);
  664. nexterror();
  665. }
  666. while(!qcanread(lineq)){
  667. if(qread(kbdq, &ch, 1) == 0)
  668. continue;
  669. send = 0;
  670. if(ch == 0){
  671. /* flush output on rawoff -> rawon */
  672. if(kbd.x > 0)
  673. send = !qcanread(kbdq);
  674. }else if(kbd.raw){
  675. kbd.line[kbd.x++] = ch;
  676. send = !qcanread(kbdq);
  677. }else{
  678. switch(ch){
  679. case '\b':
  680. if(kbd.x > 0)
  681. kbd.x--;
  682. break;
  683. case 0x15: /* ^U */
  684. kbd.x = 0;
  685. break;
  686. case '\n':
  687. case 0x04: /* ^D */
  688. send = 1;
  689. default:
  690. if(ch != 0x04)
  691. kbd.line[kbd.x++] = ch;
  692. break;
  693. }
  694. }
  695. if(send || kbd.x == sizeof kbd.line){
  696. qwrite(lineq, kbd.line, kbd.x);
  697. kbd.x = 0;
  698. }
  699. }
  700. n = qread(lineq, buf, n);
  701. qunlock(&kbd.QLock);
  702. poperror();
  703. return n;
  704. case Qcputime:
  705. k = offset;
  706. if(k >= 6*NUMSIZE)
  707. return 0;
  708. if(k+n > 6*NUMSIZE)
  709. n = 6*NUMSIZE - k;
  710. /* easiest to format in a separate buffer and copy out */
  711. for(i=0; i<6 && NUMSIZE*i<k+n; i++){
  712. l = up->time[i];
  713. if(i == TReal)
  714. l = sys->ticks - l;
  715. l = TK2MS(l);
  716. readnum(0, tmp+NUMSIZE*i, NUMSIZE, l, NUMSIZE);
  717. }
  718. memmove(buf, tmp+k, n);
  719. return n;
  720. case Qkmesg:
  721. /*
  722. * This is unlocked to avoid tying up a process
  723. * that's writing to the buffer. kmesg.n never
  724. * gets smaller, so worst case the reader will
  725. * see a slurred buffer.
  726. */
  727. if(off >= kmesg.n)
  728. n = 0;
  729. else{
  730. if(off+n > kmesg.n)
  731. n = kmesg.n - off;
  732. memmove(buf, kmesg.buf+off, n);
  733. }
  734. return n;
  735. case Qkprint:
  736. return qread(kprintoq, buf, n);
  737. case Qpgrpid:
  738. return readnum(offset, buf, n, up->pgrp->pgrpid, NUMSIZE);
  739. case Qpid:
  740. return readnum(offset, buf, n, up->pid, NUMSIZE);
  741. case Qppid:
  742. return readnum(offset, buf, n, up->parentpid, NUMSIZE);
  743. case Qtime:
  744. return readtime(offset, buf, n);
  745. case Qbintime:
  746. return readbintime(buf, n);
  747. case Qhostowner:
  748. return readstr(offset, buf, n, eve);
  749. case Qhostdomain:
  750. return readstr(offset, buf, n, hostdomain);
  751. case Quser:
  752. return readstr(offset, buf, n, up->user);
  753. case Qnull:
  754. return 0;
  755. case Qsysstat:
  756. n = MACHMAX*(NUMSIZE*11+2+1);
  757. b = smalloc(n + 1); /* +1 for NUL */
  758. bp = b;
  759. e = bp + n;
  760. for(id = 0; id < MACHMAX; id++)
  761. if((mp = sys->machptr[id]) != nil && mp->online){
  762. readnum(0, bp, NUMSIZE, mp->machno, NUMSIZE);
  763. bp += NUMSIZE;
  764. readnum(0, bp, NUMSIZE, mp->cs, NUMSIZE);
  765. bp += NUMSIZE;
  766. readnum(0, bp, NUMSIZE, mp->intr, NUMSIZE);
  767. bp += NUMSIZE;
  768. readnum(0, bp, NUMSIZE, mp->syscall, NUMSIZE);
  769. bp += NUMSIZE;
  770. readnum(0, bp, NUMSIZE, mp->pfault, NUMSIZE);
  771. bp += NUMSIZE;
  772. readnum(0, bp, NUMSIZE, mp->tlbfault, NUMSIZE);
  773. bp += NUMSIZE;
  774. readnum(0, bp, NUMSIZE, mp->tlbpurge, NUMSIZE);
  775. bp += NUMSIZE;
  776. readnum(0, bp, NUMSIZE, sys->load, NUMSIZE);
  777. bp += NUMSIZE;
  778. readnum(0, bp, NUMSIZE,
  779. (mp->perf.avg_inidle*100)/mp->perf.period,
  780. NUMSIZE);
  781. bp += NUMSIZE;
  782. readnum(0, bp, NUMSIZE,
  783. (mp->perf.avg_inintr*100)/mp->perf.period,
  784. NUMSIZE);
  785. bp += NUMSIZE;
  786. readnum(0, bp, NUMSIZE, 0, NUMSIZE); /* sched # */
  787. bp += NUMSIZE;
  788. bp = strecpy(bp, e, rolename[mp->NIX.nixtype]);
  789. *bp++ = '\n';
  790. }
  791. if(waserror()){
  792. free(b);
  793. nexterror();
  794. }
  795. n = readstr(offset, buf, n, b);
  796. free(b);
  797. poperror();
  798. return n;
  799. case Qswap:
  800. tmp[0] = 0;
  801. s = seprintpagestats(tmp, tmp + sizeof tmp);
  802. s = seprintphysstats(s, tmp + sizeof tmp);
  803. b = buf;
  804. l = s - tmp;
  805. i = readstr(offset, b, l, tmp);
  806. b += i;
  807. n -= i;
  808. if(offset > l)
  809. offset -= l;
  810. else
  811. offset = 0;
  812. return i + mallocreadsummary(c, b, n, offset);
  813. case Qsysname:
  814. if(sysname == nil)
  815. return 0;
  816. return readstr(offset, buf, n, sysname);
  817. case Qrandom:
  818. return randomread(buf, n);
  819. case Qurandom:
  820. return urandomread(buf, n);
  821. case Qdrivers:
  822. return devtabread(c, buf, n, off);
  823. case Qzero:
  824. memset(buf, 0, n);
  825. return n;
  826. case Qosversion:
  827. snprint(tmp, sizeof tmp, "2000");
  828. n = readstr(offset, buf, n, tmp);
  829. return n;
  830. case Qdebug:
  831. s = seprint(tmp, tmp + sizeof tmp, "locks %lu\n", lockstats.locks);
  832. s = seprint(s, tmp + sizeof tmp, "glare %lu\n", lockstats.glare);
  833. s = seprint(s, tmp + sizeof tmp, "inglare %lu\n", lockstats.inglare);
  834. s = seprint(s, tmp + sizeof tmp, "qlock %lu\n", qlockstats.qlock);
  835. seprint(s, tmp + sizeof tmp, "qlockq %lu\n", qlockstats.qlockq);
  836. return readstr(offset, buf, n, tmp);
  837. break;
  838. case Qsyscall:
  839. snprint(tmp, sizeof tmp, "%s", printallsyscalls ? "on" : "off");
  840. return readstr(offset, buf, n, tmp);
  841. break;
  842. default:
  843. print("consread %#llx\n", c->qid.path);
  844. error(Egreg);
  845. }
  846. return -1; /* never reached */
  847. }
  848. static int32_t
  849. conswrite(Chan *c, void *va, int32_t n, int64_t off)
  850. {
  851. Proc *up = externup();
  852. char buf[256];
  853. int32_t l, bp;
  854. char *a;
  855. Mach *mp;
  856. int i;
  857. uint32_t offset;
  858. Cmdbuf *cb;
  859. Cmdtab *ct;
  860. a = va;
  861. offset = off;
  862. extern int printallsyscalls;
  863. switch((uint32_t)c->qid.path){
  864. case Qcons:
  865. /*
  866. * Can't page fault in putstrn, so copy the data locally.
  867. */
  868. l = n;
  869. while(l > 0){
  870. bp = l;
  871. if(bp > sizeof buf)
  872. bp = sizeof buf;
  873. memmove(buf, a, bp);
  874. putstrn0(buf, bp, 1);
  875. a += bp;
  876. l -= bp;
  877. }
  878. break;
  879. case Qconsctl:
  880. print("consctl\n");
  881. if(n >= sizeof(buf))
  882. n = sizeof(buf)-1;
  883. strncpy(buf, a, n);
  884. buf[n] = 0;
  885. for(a = buf; a;){
  886. if(strncmp(a, "sys", 3) == 0) {
  887. printallsyscalls = ! printallsyscalls;
  888. print("%sracing syscalls\n", printallsyscalls ? "T" : "Not t");
  889. }
  890. if(a = strchr(a, ' '))
  891. a++;
  892. }
  893. break;
  894. case Qtime:
  895. if(!iseve())
  896. error(Eperm);
  897. return writetime(a, n);
  898. case Qbintime:
  899. if(!iseve())
  900. error(Eperm);
  901. return writebintime(a, n);
  902. case Qhostowner:
  903. return hostownerwrite(a, n);
  904. case Qhostdomain:
  905. return hostdomainwrite(a, n);
  906. case Quser:
  907. return userwrite(a, n);
  908. case Qnull:
  909. break;
  910. case Qreboot:
  911. if(!iseve())
  912. error(Eperm);
  913. cb = parsecmd(a, n);
  914. if(waserror()) {
  915. free(cb);
  916. nexterror();
  917. }
  918. ct = lookupcmd(cb, rebootmsg, nelem(rebootmsg));
  919. switch(ct->index) {
  920. case CMhalt:
  921. reboot(nil, 0, 0);
  922. break;
  923. case CMreboot:
  924. rebootcmd(cb->nf-1, cb->f+1);
  925. break;
  926. case CMpanic:
  927. *(volatile uint32_t*)0=0;
  928. panic("/dev/reboot");
  929. }
  930. poperror();
  931. free(cb);
  932. break;
  933. case Qsysstat:
  934. for(i = 0; i < MACHMAX; i++)
  935. if((mp = sys->machptr[i]) != nil && mp->online){
  936. mp = sys->machptr[i];
  937. mp->cs = 0;
  938. mp->intr = 0;
  939. mp->syscall = 0;
  940. mp->pfault = 0;
  941. mp->tlbfault = 0; /* not updated */
  942. mp->tlbpurge = 0; /* # mmuflushtlb */
  943. }
  944. break;
  945. case Qswap:
  946. if(n >= sizeof buf)
  947. error(Egreg);
  948. memmove(buf, va, n); /* so we can NUL-terminate */
  949. buf[n] = 0;
  950. if(!iseve())
  951. error(Eperm);
  952. if(buf[0]<'0' || '9'<buf[0])
  953. error(Ebadarg);
  954. if(strncmp(buf, "start", 5) == 0){
  955. print("request to start pager ignored\n");
  956. break;
  957. }
  958. break;
  959. case Qsysname:
  960. if(offset != 0)
  961. error(Ebadarg);
  962. if(n <= 0 || n >= sizeof buf)
  963. error(Ebadarg);
  964. strncpy(buf, a, n);
  965. buf[n] = 0;
  966. if(buf[n-1] == '\n')
  967. buf[n-1] = 0;
  968. kstrdup(&sysname, buf);
  969. break;
  970. case Qdebug:
  971. if(n >= sizeof(buf))
  972. n = sizeof(buf)-1;
  973. strncpy(buf, a, n);
  974. buf[n] = 0;
  975. if(n > 0 && buf[n-1] == '\n')
  976. buf[n-1] = 0;
  977. error(Ebadctl);
  978. break;
  979. case Qsyscall:
  980. if(n >= sizeof(buf))
  981. n = sizeof(buf)-1;
  982. strncpy(buf, a, n);
  983. buf[n] = 0;
  984. if(n > 0 && buf[n-1] == '\n')
  985. buf[n-1] = 0;
  986. // Doing strncmp right is just painful and overkill here.
  987. if (buf[0] == 'o') {
  988. if (buf[1] == 'n' && buf[2] == 0) {
  989. printallsyscalls = 1;
  990. break;
  991. }
  992. if (buf[1] == 'f' && buf[2] == 'f' && buf[3] == 0) {
  993. printallsyscalls = 0;
  994. break;
  995. }
  996. }
  997. error("#c/syscall: can only write on or off");
  998. break;
  999. default:
  1000. print("conswrite: %#llx\n", c->qid.path);
  1001. error(Egreg);
  1002. }
  1003. return n;
  1004. }
  1005. Dev consdevtab = {
  1006. .dc = 'c',
  1007. .name = "cons",
  1008. .reset = devreset,
  1009. .init = consinit,
  1010. .shutdown = devshutdown,
  1011. .attach = consattach,
  1012. .walk = conswalk,
  1013. .stat = consstat,
  1014. .open = consopen,
  1015. .create = devcreate,
  1016. .close = consclose,
  1017. .read = consread,
  1018. .bread = devbread,
  1019. .write = conswrite,
  1020. .bwrite = devbwrite,
  1021. .remove = devremove,
  1022. .wstat = devwstat,
  1023. };
  1024. static uint32_t randn;
  1025. static void
  1026. seedrand(void)
  1027. {
  1028. Proc *up = externup();
  1029. if(!waserror()){
  1030. randomread((void*)&randn, sizeof(randn));
  1031. poperror();
  1032. }
  1033. }
  1034. int
  1035. nrand(int n)
  1036. {
  1037. if(randn == 0)
  1038. seedrand();
  1039. randn = randn*1103515245 + 12345 + sys->ticks;
  1040. return (randn>>16) % n;
  1041. }
  1042. int
  1043. rand(void)
  1044. {
  1045. nrand(1);
  1046. return randn;
  1047. }
  1048. static uint64_t uvorder = 0x0001020304050607ULL;
  1049. static uint8_t*
  1050. le2int64_t(int64_t *to, uint8_t *f)
  1051. {
  1052. uint8_t *t, *o;
  1053. int i;
  1054. t = (uint8_t*)to;
  1055. o = (uint8_t*)&uvorder;
  1056. for(i = 0; i < sizeof(int64_t); i++)
  1057. t[o[i]] = f[i];
  1058. return f+sizeof(int64_t);
  1059. }
  1060. static uint8_t*
  1061. int64_t2le(uint8_t *t, int64_t from)
  1062. {
  1063. uint8_t *f, *o;
  1064. int i;
  1065. f = (uint8_t*)&from;
  1066. o = (uint8_t*)&uvorder;
  1067. for(i = 0; i < sizeof(int64_t); i++)
  1068. t[i] = f[o[i]];
  1069. return t+sizeof(int64_t);
  1070. }
  1071. static int32_t order = 0x00010203;
  1072. static uint8_t*
  1073. le2long(int32_t *to, uint8_t *f)
  1074. {
  1075. uint8_t *t, *o;
  1076. int i;
  1077. t = (uint8_t*)to;
  1078. o = (uint8_t*)&order;
  1079. for(i = 0; i < sizeof(int32_t); i++)
  1080. t[o[i]] = f[i];
  1081. return f+sizeof(int32_t);
  1082. }
  1083. #if 0
  1084. static uint8_t*
  1085. long2le(uint8_t *t, int32_t from)
  1086. {
  1087. uint8_t *f, *o;
  1088. int i;
  1089. f = (uint8_t*)&from;
  1090. o = (uint8_t*)&order;
  1091. for(i = 0; i < sizeof(int32_t); i++)
  1092. t[i] = f[o[i]];
  1093. return t+sizeof(int32_t);
  1094. }
  1095. #endif
  1096. char *Ebadtimectl = "bad time control";
  1097. /*
  1098. * like the old #c/time but with added info. Return
  1099. *
  1100. * secs nanosecs fastticks fasthz
  1101. */
  1102. static int
  1103. readtime(uint32_t off, char *buf, int n)
  1104. {
  1105. int64_t nsec, ticks;
  1106. int32_t sec;
  1107. char str[7*NUMSIZE];
  1108. nsec = todget(&ticks);
  1109. if(fasthz == 0LL)
  1110. fastticks((uint64_t*)&fasthz);
  1111. sec = nsec/1000000000ULL;
  1112. snprint(str, sizeof(str), "%*lu %*llu %*llu %*llu ",
  1113. NUMSIZE-1, sec,
  1114. VLNUMSIZE-1, nsec,
  1115. VLNUMSIZE-1, ticks,
  1116. VLNUMSIZE-1, fasthz);
  1117. return readstr(off, buf, n, str);
  1118. }
  1119. /*
  1120. * set the time in seconds
  1121. */
  1122. static int
  1123. writetime(char *buf, int n)
  1124. {
  1125. char b[13];
  1126. int32_t i;
  1127. int64_t now;
  1128. if(n >= sizeof(b))
  1129. error(Ebadtimectl);
  1130. strncpy(b, buf, n);
  1131. b[n] = 0;
  1132. i = strtol(b, 0, 0);
  1133. if(i <= 0)
  1134. error(Ebadtimectl);
  1135. now = i*1000000000LL;
  1136. todset(now, 0, 0);
  1137. return n;
  1138. }
  1139. /*
  1140. * read binary time info. all numbers are little endian.
  1141. * ticks and nsec are syncronized.
  1142. */
  1143. static int
  1144. readbintime(char *buf, int n)
  1145. {
  1146. int i;
  1147. int64_t nsec, ticks;
  1148. uint8_t *b = (uint8_t*)buf;
  1149. i = 0;
  1150. if(fasthz == 0LL)
  1151. fastticks((uint64_t*)&fasthz);
  1152. nsec = todget(&ticks);
  1153. if(n >= 3*sizeof(uint64_t)){
  1154. int64_t2le(b+2*sizeof(uint64_t), fasthz);
  1155. i += sizeof(uint64_t);
  1156. }
  1157. if(n >= 2*sizeof(uint64_t)){
  1158. int64_t2le(b+sizeof(uint64_t), ticks);
  1159. i += sizeof(uint64_t);
  1160. }
  1161. if(n >= 8){
  1162. int64_t2le(b, nsec);
  1163. i += sizeof(int64_t);
  1164. }
  1165. return i;
  1166. }
  1167. /*
  1168. * set any of the following
  1169. * - time in nsec
  1170. * - nsec trim applied over some seconds
  1171. * - clock frequency
  1172. */
  1173. static int
  1174. writebintime(char *buf, int n)
  1175. {
  1176. uint8_t *p;
  1177. int64_t delta;
  1178. int32_t period;
  1179. n--;
  1180. p = (uint8_t*)buf + 1;
  1181. switch(*buf){
  1182. case 'n':
  1183. if(n < sizeof(int64_t))
  1184. error(Ebadtimectl);
  1185. le2int64_t(&delta, p);
  1186. todset(delta, 0, 0);
  1187. break;
  1188. case 'd':
  1189. if(n < sizeof(int64_t)+sizeof(int32_t))
  1190. error(Ebadtimectl);
  1191. p = le2int64_t(&delta, p);
  1192. le2long(&period, p);
  1193. todset(-1, delta, period);
  1194. break;
  1195. case 'f':
  1196. if(n < sizeof(uint64_t))
  1197. error(Ebadtimectl);
  1198. le2int64_t(&fasthz, p);
  1199. todsetfreq(fasthz);
  1200. break;
  1201. }
  1202. return n;
  1203. }